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Clinical Trial Details — Status: Active, not recruiting

Administrative data

NCT number NCT02459106
Other study ID # TRIMDFH 729828
Secondary ID
Status Active, not recruiting
Phase
First received
Last updated
Start date May 27, 2015
Est. completion date June 2024

Study information

Verified date February 2024
Source AdventHealth Translational Research Institute
Contact n/a
Is FDA regulated No
Health authority
Study type Observational

Clinical Trial Summary

The purpose of this study is examine the effect of fat tissue-released miRNA on skeletal muscle and if abnormal fat tissue-released miRNA contributes to insulin resistance in obese individuals. This information will be important for our understanding of how the body's sugar metabolism is regulated and why people who are obese become insulin resistant and are more likely to develop type 2 diabetes.


Description:

Study Objectives: 1. To establish and optimize the methodology for measuring adipose tissue miRNA release. 2. To establish and optimize the methodology for measuring the effect of adipose tissue-released miRNA on skeletal muscle biology and insulin sensitivity. 3. To profile adipose tissue-released miRNA in lean insulin-sensitive and obese insulin-resistant healthy individuals. 4. To examine the effects of adipose tissue-released miRNA from lean insulin-sensitive individuals and obese insulin-resistant individuals on skeletal muscle biology and insulin sensitivity.


Recruitment information / eligibility

Status Active, not recruiting
Enrollment 100
Est. completion date June 2024
Est. primary completion date January 24, 2017
Accepts healthy volunteers Accepts Healthy Volunteers
Gender All
Age group 18 Years to 65 Years
Eligibility Inclusion Criteria: - Able to communicate meaningfully with the investigator and legally competent to provide informed written consent - 18-65 years of age - BMI of 20-25 kg/m2 (lean subjects); 30-35 kg/m2 (obese subjects) - Stable body weight (< 3 kg change in the last 8 weeks) - homeostatic model assessment (HOMA)-insulin resistance <2.7 if lean; homeostatic model assessment (HOMA)-insulin resistance =2.7 if obese Exclusion Criteria: - Lactation or pregnancy, current and/or within last 6 months, per participant's report - Female subjects postmenopausal - Cardiovascular disease (unstable angina, myocardial infarction or coronary revascularization within 6 months) - Liver disease (AST or ALT(alanine aminotransferase)>2.5 times the upper limit of normal) - Kidney disease (creatinine >1.6 mg/dl) - Anemia (hemoglobin <12 g/dl in men, <11 g/dl in women) - Thyroid dysfunction (abnormal TSH) - HbA1c =6.5% - Uncontrolled hypertension (systolic BP>160 mmHg, diastolic BP>100 mmHg) - History of coagulopathies - History (within the last 5 years) or presence of malignancy, (skin cancers, with the exception of melanoma, may be acceptable) - Current or history of drug abuse or alcohol abuse (>2 drinks/day) - Prior treatment (within last 3 months) with systemic glucocorticoids (>2 weeks), beta-blockers, drugs for weight loss, niacin or fibrates - History of HIV, active Hepatitis B or C, or Tuberculosis (participant reported) - Smoke > 5 cigarettes per day

Study Design


Locations

Country Name City State
United States Translational Research Institute for Metabolism and Diabetes Orlando Florida

Sponsors (1)

Lead Sponsor Collaborator
AdventHealth Translational Research Institute

Country where clinical trial is conducted

United States, 

References & Publications (24)

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Deng ZB, Poliakov A, Hardy RW, Clements R, Liu C, Liu Y, Wang J, Xiang X, Zhang S, Zhuang X, Shah SV, Sun D, Michalek S, Grizzle WE, Garvey T, Mobley J, Zhang HG. Adipose tissue exosome-like vesicles mediate activation of macrophage-induced insulin resistance. Diabetes. 2009 Nov;58(11):2498-505. doi: 10.2337/db09-0216. Epub 2009 Aug 12. — View Citation

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Herrera BM, Lockstone HE, Taylor JM, Ria M, Barrett A, Collins S, Kaisaki P, Argoud K, Fernandez C, Travers ME, Grew JP, Randall JC, Gloyn AL, Gauguier D, McCarthy MI, Lindgren CM. Global microRNA expression profiles in insulin target tissues in a spontaneous rat model of type 2 diabetes. Diabetologia. 2010 Jun;53(6):1099-109. doi: 10.1007/s00125-010-1667-2. Epub 2010 Mar 3. — View Citation

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Kim SY, Kim AY, Lee HW, Son YH, Lee GY, Lee JW, Lee YS, Kim JB. miR-27a is a negative regulator of adipocyte differentiation via suppressing PPARgamma expression. Biochem Biophys Res Commun. 2010 Feb 12;392(3):323-8. doi: 10.1016/j.bbrc.2010.01.012. Epub 2010 Jan 7. — View Citation

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Lau NC, Lim LP, Weinstein EG, Bartel DP. An abundant class of tiny RNAs with probable regulatory roles in Caenorhabditis elegans. Science. 2001 Oct 26;294(5543):858-62. doi: 10.1126/science.1065062. — View Citation

Lee RC, Ambros V. An extensive class of small RNAs in Caenorhabditis elegans. Science. 2001 Oct 26;294(5543):862-4. doi: 10.1126/science.1065329. — View Citation

Martinelli R, Nardelli C, Pilone V, Buonomo T, Liguori R, Castano I, Buono P, Masone S, Persico G, Forestieri P, Pastore L, Sacchetti L. miR-519d overexpression is associated with human obesity. Obesity (Silver Spring). 2010 Nov;18(11):2170-6. doi: 10.1038/oby.2009.474. Epub 2010 Jan 7. — View Citation

Meerson A, Traurig M, Ossowski V, Fleming JM, Mullins M, Baier LJ. Human adipose microRNA-221 is upregulated in obesity and affects fat metabolism downstream of leptin and TNF-alpha. Diabetologia. 2013 Sep;56(9):1971-9. doi: 10.1007/s00125-013-2950-9. Epub 2013 Jun 12. — View Citation

Ogawa R, Tanaka C, Sato M, Nagasaki H, Sugimura K, Okumura K, Nakagawa Y, Aoki N. Adipocyte-derived microvesicles contain RNA that is transported into macrophages and might be secreted into blood circulation. Biochem Biophys Res Commun. 2010 Aug 6;398(4):723-9. doi: 10.1016/j.bbrc.2010.07.008. Epub 2010 Jul 17. — View Citation

Ortega FJ, Moreno-Navarrete JM, Pardo G, Sabater M, Hummel M, Ferrer A, Rodriguez-Hermosa JI, Ruiz B, Ricart W, Peral B, Fernandez-Real JM. MiRNA expression profile of human subcutaneous adipose and during adipocyte differentiation. PLoS One. 2010 Feb 2;5(2):e9022. doi: 10.1371/journal.pone.0009022. — View Citation

Pasquinelli AE, Reinhart BJ, Slack F, Martindale MQ, Kuroda MI, Maller B, Hayward DC, Ball EE, Degnan B, Muller P, Spring J, Srinivasan A, Fishman M, Finnerty J, Corbo J, Levine M, Leahy P, Davidson E, Ruvkun G. Conservation of the sequence and temporal expression of let-7 heterochronic regulatory RNA. Nature. 2000 Nov 2;408(6808):86-9. doi: 10.1038/35040556. — View Citation

Sun L, Xie H, Mori MA, Alexander R, Yuan B, Hattangadi SM, Liu Q, Kahn CR, Lodish HF. Mir193b-365 is essential for brown fat differentiation. Nat Cell Biol. 2011 Jul 10;13(8):958-65. doi: 10.1038/ncb2286. — View Citation

Trayhurn P. Endocrine and signalling role of adipose tissue: new perspectives on fat. Acta Physiol Scand. 2005 Aug;184(4):285-93. doi: 10.1111/j.1365-201X.2005.01468.x. — View Citation

Turchinovich A, Samatov TR, Tonevitsky AG, Burwinkel B. Circulating miRNAs: cell-cell communication function? Front Genet. 2013 Jun 28;4:119. doi: 10.3389/fgene.2013.00119. Print 2013. — View Citation

Xie H, Lim B, Lodish HF. MicroRNAs induced during adipogenesis that accelerate fat cell development are downregulated in obesity. Diabetes. 2009 May;58(5):1050-7. doi: 10.2337/db08-1299. Epub 2009 Feb 2. — View Citation

Xie H, Sun L, Lodish HF. Targeting microRNAs in obesity. Expert Opin Ther Targets. 2009 Oct;13(10):1227-38. doi: 10.1517/14728220903190707. — View Citation

Zaragosi LE, Wdziekonski B, Brigand KL, Villageois P, Mari B, Waldmann R, Dani C, Barbry P. Small RNA sequencing reveals miR-642a-3p as a novel adipocyte-specific microRNA and miR-30 as a key regulator of human adipogenesis. Genome Biol. 2011 Jul 18;12(7):R64. doi: 10.1186/gb-2011-12-7-r64. — View Citation

* Note: There are 24 references in allClick here to view all references

Outcome

Type Measure Description Time frame Safety issue
Primary Levels of miRNA will be measured as well as the adipose tissue specific miRNA. The effect of miRNA released by adipose tissue from lean insulin-sensitive and from obese insulin-resistant individuals on skeletal muscle biology and insulin signaling. 4 weeks
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